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A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits

Tomato (Solanum lycopersicum L.) is a major horticultural crop and a model species among eudicots, especially for traits related to reproductive development. Although considerable progress has been made since the tomato genome sequence project was completed, most of the genes identified remain predi...

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Autores principales: Fonseca, Rocío, Capel, Carmen, Nieto-Canseco, Roberto, Ortiz-Atienza, Ana, Bretones, Sandra, López-Fábregas, Juan D., Quevedo-Colmena, Abraham S., Lebrón, Ricardo, Barragán-Lozano, Teresa, Villalobos-Ramírez, Víctor, Yuste-Lisbona, Fernando J., Angosto, Trinidad, Capel, Juan, Lozano, Rafael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571841/
https://www.ncbi.nlm.nih.gov/pubmed/36235319
http://dx.doi.org/10.3390/plants11192453
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author Fonseca, Rocío
Capel, Carmen
Nieto-Canseco, Roberto
Ortiz-Atienza, Ana
Bretones, Sandra
López-Fábregas, Juan D.
Quevedo-Colmena, Abraham S.
Lebrón, Ricardo
Barragán-Lozano, Teresa
Villalobos-Ramírez, Víctor
Yuste-Lisbona, Fernando J.
Angosto, Trinidad
Capel, Juan
Lozano, Rafael
author_facet Fonseca, Rocío
Capel, Carmen
Nieto-Canseco, Roberto
Ortiz-Atienza, Ana
Bretones, Sandra
López-Fábregas, Juan D.
Quevedo-Colmena, Abraham S.
Lebrón, Ricardo
Barragán-Lozano, Teresa
Villalobos-Ramírez, Víctor
Yuste-Lisbona, Fernando J.
Angosto, Trinidad
Capel, Juan
Lozano, Rafael
author_sort Fonseca, Rocío
collection PubMed
description Tomato (Solanum lycopersicum L.) is a major horticultural crop and a model species among eudicots, especially for traits related to reproductive development. Although considerable progress has been made since the tomato genome sequence project was completed, most of the genes identified remain predictions with an unknown or hypothetical function. This lack of functional characterization hampers the use of the huge amount of genomic information available to improve the quality and productivity of this crop. Reverse genetics strategies such as artificial mutagenesis and next-generation sequencing approaches build the perfect tandem for increasing knowledge on functional annotation of tomato genes. This work reports the phenotypic characterization of a tomato mutant collection generated from an EMS chemical mutagenesis program aimed to identify interesting agronomic mutants and novel gene functions. Tomato mutants were grouped into fourteen phenotypic classes, including vegetative and reproductive development traits, and the inheritance pattern of the identified mutations was studied. In addition, causal mutation of a selected mutant line was isolated through a mapping-by-sequencing approach as a proof of concept of this strategy’s successful implementation. Results support tomato mutagenesis as an essential tool for functional genomics in this fleshy-fruited model species and a highly valuable resource for future breeding programs of this crop species aimed at the development of more productive and resilient new varieties under challenging climatic and production scenarios.
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spelling pubmed-95718412022-10-17 A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits Fonseca, Rocío Capel, Carmen Nieto-Canseco, Roberto Ortiz-Atienza, Ana Bretones, Sandra López-Fábregas, Juan D. Quevedo-Colmena, Abraham S. Lebrón, Ricardo Barragán-Lozano, Teresa Villalobos-Ramírez, Víctor Yuste-Lisbona, Fernando J. Angosto, Trinidad Capel, Juan Lozano, Rafael Plants (Basel) Article Tomato (Solanum lycopersicum L.) is a major horticultural crop and a model species among eudicots, especially for traits related to reproductive development. Although considerable progress has been made since the tomato genome sequence project was completed, most of the genes identified remain predictions with an unknown or hypothetical function. This lack of functional characterization hampers the use of the huge amount of genomic information available to improve the quality and productivity of this crop. Reverse genetics strategies such as artificial mutagenesis and next-generation sequencing approaches build the perfect tandem for increasing knowledge on functional annotation of tomato genes. This work reports the phenotypic characterization of a tomato mutant collection generated from an EMS chemical mutagenesis program aimed to identify interesting agronomic mutants and novel gene functions. Tomato mutants were grouped into fourteen phenotypic classes, including vegetative and reproductive development traits, and the inheritance pattern of the identified mutations was studied. In addition, causal mutation of a selected mutant line was isolated through a mapping-by-sequencing approach as a proof of concept of this strategy’s successful implementation. Results support tomato mutagenesis as an essential tool for functional genomics in this fleshy-fruited model species and a highly valuable resource for future breeding programs of this crop species aimed at the development of more productive and resilient new varieties under challenging climatic and production scenarios. MDPI 2022-09-20 /pmc/articles/PMC9571841/ /pubmed/36235319 http://dx.doi.org/10.3390/plants11192453 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fonseca, Rocío
Capel, Carmen
Nieto-Canseco, Roberto
Ortiz-Atienza, Ana
Bretones, Sandra
López-Fábregas, Juan D.
Quevedo-Colmena, Abraham S.
Lebrón, Ricardo
Barragán-Lozano, Teresa
Villalobos-Ramírez, Víctor
Yuste-Lisbona, Fernando J.
Angosto, Trinidad
Capel, Juan
Lozano, Rafael
A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title_full A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title_fullStr A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title_full_unstemmed A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title_short A Tomato EMS-Mutagenized Population Provides New Valuable Resources for Gene Discovery and Breeding of Developmental Traits
title_sort tomato ems-mutagenized population provides new valuable resources for gene discovery and breeding of developmental traits
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9571841/
https://www.ncbi.nlm.nih.gov/pubmed/36235319
http://dx.doi.org/10.3390/plants11192453
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